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首页> 外文期刊>Journal of Clinical Microbiology >Comparison of the MALDI Biotyper System Using Sepsityper Specimen Processing to Routine Microbiological Methods for Identification of Bacteria from Positive Blood Culture Bottles
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Comparison of the MALDI Biotyper System Using Sepsityper Specimen Processing to Routine Microbiological Methods for Identification of Bacteria from Positive Blood Culture Bottles

机译:MALDI Biotyper系统使用单独标本处理与常规微生物学方法从阳性血培养瓶中鉴定细菌的比较

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Bloodstream infections are a leading cause of admissions to hospital intensive care units and carry a high mortality rate. Clinical outcome can be greatly improved by early effective antibiotic therapy; therefore, broad-spectrum antimicrobial therapy is often initiated when there is a clinical suspicion of bloodstream infection. Unfortunately, this method may not always be effective when dealing with inherently resistant organisms and can also result in iatrogenic infection and the development of resistant isolates. Rapid identification of the infecting organism may aid in choosing appropriate antimicrobial therapy, thereby reducing these potential adverse events. We compared the matrix-assisted laser desorption ionization (MALDI) Biotyper system with Sepsityper specimen processing (Bruker Daltonics, Billerica, MA) to routine methods for the identification of microorganisms from 164 positive blood cultures. The MALDI Biotyper/Sepsityper identified 85.5% of bacterial isolates directly from positive monomicrobial blood cultures with 97.6% concordance to genus and 94.1% concordance to species with routine identification methods. Gram-negative isolates were more likely to produce acceptable confidence scores (97.8%) than Gram-positive isolates (80.0%); however, genus and species concordance with routine identification methods were similar in both groups. Reanalysis of collected spectra using modified blood culture-specific parameters resulted in an improved overall identification rate for Gram-positive bacteria (89.0%). Median times to identification using the MALDI Biotyper/Sepsityper were 23 to 83 h faster than routine methods for Gram-positive isolates and 34 to 51 h faster for Gram-negative isolates.
机译:血液感染是医院重症监护病房入院的主要原因,并且死亡率很高。早期有效的抗生素治疗可以大大改善临床结果;因此,当临床上怀疑有血流感染时,通常会启动广谱抗菌治疗。不幸的是,这种方法在与内在抗性有机体打交道时可能并不总是有效的,并且还可能导致医源性感染和产生抗性分离株。快速鉴定感染生物可能有助于选择适当的抗菌疗法,从而减少这些潜在的不良事件。我们将基质辅助激光解吸电离(MALDI)Biotyper系统与Sepsityper标本处理(布鲁克·道尔顿公司,比勒里卡,马萨诸塞州)与从164种阳性血液培养物中鉴定微生物的常规方法进行了比较。 MALDI Biotyper / Sepsityper可通过常规鉴定方法直接从阳性单微生物血液培养物中鉴定出85.5%的细菌分离株,其中属属的97.6%和物种的94.1%。革兰氏阴性分离株比革兰氏阳性分离株(80.0%)更有可能产生可接受的置信度得分(97.8%)。但是,两组中常规检查方法的属和种相似。使用改良的血液培养特异性参数对收集到的光谱进行重新分析,可提高革兰氏阳性菌的总体识别率(89.0%)。使用MALDI Biotyper / Sepsityper进行鉴定的中位时间比革兰氏阳性分离株的常规方法快23至83小时,而革兰氏阴性分离株的常规方法要快34至51小时。

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